Exsolving B-site nanomaterials from A-site deficient perovskite lattice has been attracting great attention in recent years, for the development of highly efficient fuel electrode materials for solid oxide cells (SOCs). The emergent nanoparticles, such as Ni, Fe, Cu, Co or noble metals etc. are found exhibiting not only superior electrochemical catalytic activity towards fuel oxidation and reforming, but also excellent coking resistance and stability. Most recently, we discovered that electrochemical reduction can also trigger exsolution with higher efficiency and larger population than that through chemical reduction by H2. Nevertheless, the fundamental mechanism governing the exsolution with respect to the defect chemistry as well as the ...
The efficient oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) catalyst materials...
The authors would like to acknowledge the EPSRC and the University of St Andrews for funding this wo...
International audienceExsolution of metal nanoparticles from a perovskite oxide combined with concom...
Exsolving B-site nanomaterials from A-site deficient perovskite lattice has been attracting great at...
In this work, we focus on investigating the titanate perovskites with exsolved Ni-Co alloy nanocatal...
Constructing nanostructure through exsolution has been demonstrated as an effective approach to prod...
Solid oxide fuel cells (SOFCs) have attracted attention as a promising electrochemical energy conver...
This work is supported by the NSFC (grant No. 51702264; 41371275) and National Key Research and Deve...
The authors would like to thank the EPSRC UKRI Innovation Fellowship EP/S001891/1 for funding, and t...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
Construction of ceria-metal/titanate heterostructurevia exsolution is a promising strategy to improv...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
The development of redox stable oxide perovskite – based electrodes for cost-effective symmetric sol...
International audienceA new La0.5Sr0.5Ti0.75Ni0.25O3 (LSTN25) titanate was proposed as a hydrogen el...
Growth of finely dispersed nanocatalysts by exsolution of metal nanoparticles from perovskite oxides...
The efficient oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) catalyst materials...
The authors would like to acknowledge the EPSRC and the University of St Andrews for funding this wo...
International audienceExsolution of metal nanoparticles from a perovskite oxide combined with concom...
Exsolving B-site nanomaterials from A-site deficient perovskite lattice has been attracting great at...
In this work, we focus on investigating the titanate perovskites with exsolved Ni-Co alloy nanocatal...
Constructing nanostructure through exsolution has been demonstrated as an effective approach to prod...
Solid oxide fuel cells (SOFCs) have attracted attention as a promising electrochemical energy conver...
This work is supported by the NSFC (grant No. 51702264; 41371275) and National Key Research and Deve...
The authors would like to thank the EPSRC UKRI Innovation Fellowship EP/S001891/1 for funding, and t...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
Construction of ceria-metal/titanate heterostructurevia exsolution is a promising strategy to improv...
Lanthanum strontium chromite (LSC) perovskite partially doped with 15% of Ni on the B-site as reduci...
The development of redox stable oxide perovskite – based electrodes for cost-effective symmetric sol...
International audienceA new La0.5Sr0.5Ti0.75Ni0.25O3 (LSTN25) titanate was proposed as a hydrogen el...
Growth of finely dispersed nanocatalysts by exsolution of metal nanoparticles from perovskite oxides...
The efficient oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) catalyst materials...
The authors would like to acknowledge the EPSRC and the University of St Andrews for funding this wo...
International audienceExsolution of metal nanoparticles from a perovskite oxide combined with concom...